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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of cold work on low-temperature sensitization behaviour of austenitic stainless steels
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Effect of cold work on low-temperature sensitization behaviour of austenitic stainless steels

机译:冷加工对奥氏体不锈钢低温敏化行为的影响

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The effects of cold work and low-temperature sensitization heat treatment of non-sensitized austenitic stainless steels have been investigated and related to the cracking in nuclear power reactors. Types 304, 304L and 304LN developed martensite after 15% cold working. Heat treatment of these cold worked steels at 500 degreesC led to sensitization of grain boundaries and the matrix and a desensitization effect was seen in 11 days due to fast diffusion rate of chromium in martensite. Types 316L and 316LN did not develop martensite upon cold rolling due to its chemical composition suppressing the martensite transformation (due to deformation) temperature, hence these were not sensitized at 500 degreesC. The sensitization of the martensite phase was always accompanied by a hump in the reactivation current peak in the double loop electrochemical potentiokinetic reactivation test, thus providing a test to detect such sensitization. It was shown that bending does not produce martensite and therefore, is a better method to simulate weld heat affected zone. Bending and heating at 500 degreesC for 11 days led to fresh precipitation due to increased retained strain and desensitization of 304LN due to faster diffusion rate of chromium along dislocations. The as received or solution annealed 304 and 304LN with 0.15% nitrogen showed increased sensitization after heat treatment at 500 degreesC, indicating the presence of carbidesitrides. (C) 2004 Elsevier B.V. All rights reserved.
机译:研究了非敏化奥氏体不锈钢的冷作和低温敏化热处理的效果,并与核动力反应堆的开裂有关。 304、304L和304LN型在经过15%的冷加工后会形成马氏体。这些冷作钢在500℃下进行热处理会引起晶界和基体的敏化,并且由于铬在马氏体中的快速扩散速率而在11天内出现了脱敏效果。 316L和316LN型由于化学成分抑制了马氏体相变(由于变形)的温度,因此在冷轧时不产生马氏体,因此在500℃下不敏化。马氏体相的敏化总是伴随着在双回路电化学电位动力学再活化试验中再活化电流峰的驼峰,因此提供了检测这种敏化的试验。结果表明,弯曲不会产生马氏体,因此是模拟焊接热影响区的更好方法。在500摄氏度下弯曲和加热11天,由于保留应变增加而引起新鲜的沉淀,并且由于沿位错的铬扩散速度加快,304LN脱敏。原样或用0.15%氮进行溶液退火的304和304LN在500摄氏度的热处理后显示出更高的敏化度,表明存在碳化物/氮化物。 (C)2004 Elsevier B.V.保留所有权利。

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